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The 20BC415A0ANNNNC0 is a high-power industrial adjustable-frequency AC drive belonging to the PowerFlex 700 series.
It is designed for large three-phase AC motor applications where controlled acceleration, adjustable operating speed, controlled deceleration and industrial motor regulation are required.
The model is rated at 415 A and belongs to the 400 VAC three-phase configuration family. Its published rating is approximately 240 kW for Normal Duty and 200 kW for Heavy Duty. The configuration is an IP20 / Type 1 drive, with no HIM operator interface, no internal brake IGBT, no drive-mounted brake resistor, no CE-compliant input filter, no communication module and vector control with 24 V I/O.
The drive is intended for substantial industrial equipment rather than compact machinery. Typical applications include large conveyors, pumps, fans, blowers, compressors, mixers, material-handling equipment and other process machinery.
Because of its 415 A rating, the complete installation requires careful attention to incoming power, motor current, cable sizing, grounding, cabinet ventilation, heat dissipation, mechanical mounting and service access.
The PowerFlex 700 20B family has been discontinued, so this particular model is mainly relevant to existing installations, replacement projects, spare-parts management and retrofit work. The newer-generation PowerFlex 755 family is generally positioned as an engineering-replacement direction for discontinued high-power 20B drives.
| Item | Specification |
|---|---|
| Model | 20BC415A0ANNNNC0 |
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Product Series | PowerFlex 700 |
| Product Category | Adjustable Frequency AC Drive |
| Product Type | High-Power Industrial AC Drive |
| Main Function | Variable-speed AC motor control |
| Voltage Class | 400 VAC |
| Input | 3-phase |
| Rated Current | 415 A |
| Normal-Duty Rating | 240 kW |
| Heavy-Duty Rating | 200 kW |
| Control Method | Vector Control |
| I/O | 24 V |
| Enclosure | IP20 / Type 1 |
| Frame | Frame 8 |
| Brake IGBT | Not included |
| Brake Resistor | Not included |
| Communication Module | Not included |
| Feedback | No feedback option |
| HIM | Blank plate / no HIM |
| Input Filter | No CE-compliant filter |
| Mounting | Cabinet / panel |
| Cooling | Forced-air |
| Product Status | Discontinued |
The model’s most useful identification can therefore be summarized as:
PowerFlex 700 + 400 VAC + 3-phase + 415 A + 240 kW Normal Duty + 200 kW Heavy Duty + IP20/Type 1 + Vector Control + 24 V I/O + Frame 8.
The published selection information identifies 20BC415A0ANNNNC0 as the 400 V counterpart within the 415 A class, with the corresponding 480 V model listed as 20BD415A0ANNNNC0.
| Parameter | 20BC415A0ANNNNC0 |
|---|---|
| Model | 20BC415A0ANNNNC0 |
| Brand | Allen-Bradley |
| Series | PowerFlex 700 |
| Product Type | Adjustable Frequency AC Drive |
| Input Voltage | 400 VAC class |
| Input Phase | 3-phase |
| Output Phase | 3-phase |
| Rated Output Current | 415 A |
| Normal-Duty Power | 240 kW |
| Heavy-Duty Power | 200 kW |
| Control | Vector Control |
| I/O Voltage | 24 V |
| Enclosure | IP20 / Type 1 |
| Frame Size | Frame 8 |
| Brake IGBT | No |
| Internal Brake Resistor | No |
| Communication Module | No |
| Feedback | No feedback option |
| HIM | No HIM / blank plate |
| EMC / CE Filter | No CE-compliant filter |
| Common-Mode Choke | Not included |
| Cooling | Forced air |
| Installation | Cabinet / panel |
| Approx. Weight | Large Frame 8 assembly; exact catalog-specific weight should be verified from the mechanical drawing/nameplate |
| Approx. Dimensions | Frame 8; exact H × W × D should be verified from the catalog-specific mechanical drawing |
| Typical Motor Application | Large industrial AC motors |
| Typical Duty | Continuous industrial variable-speed operation |
| Product Lifecycle | Discontinued |
The current information available for the exact model identifies it as a 400 VAC, three-phase, 415 A, 240 kW Normal Duty / 200 kW Heavy Duty, IP20 / Type 1, Frame 8 configuration.
The 415 A rating is the central characteristic of this drive.
This is a very high-current industrial drive intended for large motors.
The corresponding selection data also identifies the 415 A class with higher short-duration current capability. For the closely related 480 V configuration, the published output-current figures are 415 A continuous, 457 A for one minute and 623 A for three seconds.
This illustrates the type of industrial application for which the drive was designed.
A machine using a drive of this size is generally not a small standalone machine. It is more likely to be a major production asset where the motor represents a significant part of the machine’s total power consumption.
Applications may include:
One important feature of the model is the difference between its Normal-Duty and Heavy-Duty power ratings.
| Rating Category | Approximate Rating |
|---|---|
| Model | 20BC415A0ANNNNC0 |
| Rated Current | 415 A |
| Normal Duty | 240 kW |
| Heavy Duty | 200 kW |
| Voltage | 400 VAC class |
| Phase | 3-phase |
The Normal-Duty rating is generally associated with applications where the motor does not require the highest overload capability.
Heavy-Duty operation is more appropriate for applications where the motor experiences higher torque demands or more demanding overload conditions.
This distinction is particularly important for machines such as conveyors, crushers, mixers and certain material-handling equipment.
A motor should therefore not be selected solely by comparing its nominal kW rating with the drive’s Normal-Duty rating.
The actual motor current, overload requirement, acceleration profile, load characteristics and operating cycle should all be evaluated.
The 20BC415A0ANNNNC0 is designed to regulate the electrical power delivered to a large AC motor.
A conventional motor starter primarily provides switching and protection.
An adjustable-frequency drive performs a much broader function.
It controls the motor’s operating frequency and voltage, allowing the machine to accelerate, decelerate and operate at different speeds.
This provides several practical benefits.
A large conveyor can start gradually.
A pump can change speed according to process requirements.
A fan can reduce speed when full airflow is unnecessary.
A mixer can start at a low speed and increase gradually.
A large machine can be coordinated with other equipment in a production line.
The drive therefore becomes an important part of the machine’s control architecture.
The catalog configuration contains several option characteristics that are important when replacing an existing unit.
| Configuration Item | 20BC415A0ANNNNC0 |
|---|---|
| Model | 20BC415A0ANNNNC0 |
| HIM | Blank plate / no HIM |
| Brake IGBT | Without |
| Brake Resistor | Without drive-mounted resistor |
| CE Filter | Without |
| Communication Module | Without |
| Feedback | Without feedback |
| Control | Vector Control |
| I/O | 24 V |
| Enclosure | IP20 / Type 1 |
| Frame | Frame 8 |
These options mean that the model is a relatively basic high-power PowerFlex 700 configuration that can be integrated into a larger industrial control system.
If an existing installation uses an encoder, communication network, dynamic braking system or different I/O arrangement, simply replacing the drive with the same basic power rating may not reproduce the original system functionality.
Large conveyors can have high inertia and significant starting torque requirements.
Direct starting can impose a sudden mechanical load on the belt, gearbox, coupling and drive components.
With an adjustable-frequency drive, the motor can accelerate gradually.
This can help reduce mechanical shock and provide smoother machine operation.
The conveyor speed can also be adjusted according to production requirements.
Typical applications include:
The drive is suitable for large industrial pumps where variable-speed operation is required.
A pump does not always need to operate at maximum speed.
The drive can adjust the motor speed according to process demand.
Typical applications include:
For suitable centrifugal-pump applications, variable-speed control can also reduce unnecessary energy consumption during periods of lower demand.
Large fans can consume significant power when operating continuously at full speed.
Variable-speed control allows the airflow requirement to be adjusted electronically.
Typical applications include:
Large compressors can require substantial motor power and controlled starting.
The drive can provide controlled acceleration and adjustable operating speed when the compressor is designed for variable-frequency operation.
The compressor manufacturer’s limits must be considered, including:
Industrial mixers can experience highly variable torque.
The motor may require high torque during startup when the material is stationary.
Once the material is moving, the required torque can change.
The drive can provide a controlled acceleration profile and allow operating speed to be adjusted to the production recipe.
Typical applications include:
Large crushers can create significant torque demand.
The drive can provide controlled motor startup and allow the machine to be operated within a controlled speed range.
For such applications, Heavy-Duty rating and overload capability become particularly important.
The drive is also suitable for large material-handling systems.
Examples include:
For hoisting equipment, however, the complete mechanical braking and safety system must be independently engineered.
The 415 A rating allows the drive to handle very large industrial motors.
This is the primary advantage over compact variable-frequency drives.
It is designed for installations where motor power is measured in hundreds of kilowatts rather than a few kilowatts.
The drive provides approximately:
240 kW Normal Duty
and
200 kW Heavy Duty.
This places it firmly in the large industrial drive category.
Vector control provides more sophisticated motor regulation than simple scalar frequency control.
It can improve:
This makes the drive suitable for machines where the load can change during operation.
Large motors can create substantial electrical and mechanical stress when started directly.
The drive allows the motor to accelerate according to a programmed ramp.
This can reduce mechanical shock and make machine startup more controlled.
The motor can operate at different speeds according to production requirements.
This provides greater flexibility than a fixed-speed motor.
The drive can become part of the process-control system.
For example:
Process demand → Controller → Drive → Motor → Mechanical load
This allows motor speed to respond to the production process rather than simply running continuously at one fixed speed.
The IP20 / Type 1 configuration is suitable for installation in an industrial electrical environment.
The drive can be integrated into a larger cabinet containing:
Physical size is particularly important for this model because it belongs to the Frame 8 class.
| Mechanical Parameter | Specification |
|---|---|
| Model | 20BC415A0ANNNNC0 |
| Frame Size | Frame 8 |
| Enclosure | IP20 / Type 1 |
| Installation | Cabinet / panel |
| Height | Exact catalog-specific dimension should be verified |
| Width | Exact catalog-specific dimension should be verified |
| Depth | Exact catalog-specific dimension should be verified |
| Approx. Weight | Exact catalog-specific weight should be verified before transport or lifting |
| Cooling | Forced-air |
| Cabinet Space | Large industrial enclosure required |
| Service Clearance | Substantial front/service clearance required |
The 415 A model is identified as Frame 8, which is important when planning cabinet space.
For this particular catalog number, it is better not to invent a numerical weight or dimensional value that cannot be confidently tied to the exact mechanical configuration.
The correct engineering procedure is to use the mechanical drawing for 20BC415A0ANNNNC0 when determining the exact:
Height × Width × Depth × Weight.
This is especially important for cabinet replacement because even a relatively small difference in physical dimensions can affect cable routing, cooling and service access.
| Electrical Parameter | Specification |
|---|---|
| Model | 20BC415A0ANNNNC0 |
| Input Voltage | 400 VAC |
| Input Phase | 3-phase |
| Output Phase | 3-phase |
| Continuous Current | 415 A |
| Normal-Duty Power | 240 kW |
| Heavy-Duty Power | 200 kW |
| Control | Vector Control |
| I/O | 24 V |
| Frequency | 50/60 Hz class |
| Enclosure | IP20 / Type 1 |
| Frame | Frame 8 |
| Brake IGBT | No |
| Brake Resistor | No internal resistor |
| Communication Module | No |
| Feedback | No |
| EMC Filter | No CE-compliant filter |
| Cooling | Forced air |
| Installation | Industrial cabinet |
The exact published configuration confirms the 415 A, 240 kW Normal Duty, 200 kW Heavy Duty, IP20 / Type 1, Frame 8 and 24 V vector-control characteristics.
The reference configuration does not include an internal brake IGBT.
It also does not include a drive-mounted brake resistor.
This is important for machines with high inertia.
When a large motor decelerates, energy can return from the mechanical system into the drive’s DC bus.
If the machine needs rapid stopping, this energy must be managed.
Depending on the application, the system may require:
The correct solution depends on the machine’s inertia, stopping time and safety requirements.
The referenced configuration does not include a communication module.
This means that a system designer should not assume that the drive can communicate directly over a particular industrial network without additional hardware.
The drive can still be incorporated into an automation system through its available control interface or an appropriate communication option.
Typical control functions include:
For a replacement project, the existing control wiring should be documented before removing the original drive.
A 415 A drive produces substantial heat.
The cabinet therefore needs adequate heat-dissipation capability.
The design should consider:
A cabinet may have sufficient physical space while still being thermally unsuitable.
The cooling system should therefore be calculated rather than selected simply according to cabinet volume.
At 415 A, the electrical conductors can be large.
Input and motor cables must be selected according to the applicable electrical requirements.
Important factors include:
The motor cable should also be routed appropriately to reduce interference with sensitive control and communication circuits.
The following models are useful for comparison within the same PowerFlex 700 family or closely related high-power configurations.
| Model | Series | Voltage | Current | Power Class | Control | Frame | Approx. Weight | Dimensions |
|---|---|---|---|---|---|---|---|---|
| 20BC415A0ANNNNC0 | PowerFlex 700 | 400 VAC | 415 A | 240 kW ND / 200 kW HD | Vector, 24 V I/O | Frame 8 | Verify exact unit | Verify exact Frame 8 drawing |
| 20BD415A0ANNNNC0 | PowerFlex 700 | 480 VAC | 415 A | 350 HP ND / 300 HP HD | Vector | Frame 8 | Configuration-dependent | Frame 8 |
| 20BD415A0ANNNND0 | PowerFlex 700 | 480 VAC | 415 A | 350 HP ND / 300 HP HD | Vector, 120 V I/O | Frame 8 | Configuration-dependent | Frame 8 |
| 20BD415N0ANNNND0 | PowerFlex 700 | 480 VAC | 415 A | High-power class | Vector | Frame 8 | Configuration-dependent | Frame 8 |
| 20BD481A0ANNNNC0 | PowerFlex 700 | 480 VAC | 481 A | 400 HP ND / 350 HP HD | Vector | Frame 8 | Configuration-dependent | Frame 8 |
| 20BC481A0ANNNNC0 | PowerFlex 700 | 400 VAC | 481 A | 280 kW ND / 240 kW HD | Vector | Frame 8 | Configuration-dependent | Frame 8 |
The PowerFlex 700 selection information places the 20BC415A0ANNNNC0 at the 415 A / 240 kW Normal Duty / 200 kW Heavy Duty point and places 20BC481A0ANNNNC0 at the next higher 481 A class.
| Parameter | Specification |
|---|---|
| Model | 20BD415A0ANNNNC0 |
| Series | PowerFlex 700 |
| Voltage | 480 VAC |
| Phase | 3-phase |
| Current | 415 A |
| Normal-Duty Power | 350 HP |
| Heavy-Duty Power | 300 HP |
| Frame | Frame 8 |
| Enclosure | IP20 / Type 1 |
| Control | Vector |
| I/O | 24 V class |
| Brake IGBT | No |
| Brake Resistor | No |
| Communication | No |
| Feedback | No |
| Filter | Without CE-compliant filter |
| Weight | Configuration-dependent |
| Dimensions | Frame 8; exact drawing required |
This is one of the closest related configurations because it has the same 415 A current class while using a higher 480 VAC voltage class.
It is useful when comparing installations with different supply voltages, but it is not a direct replacement for the 400 VAC model without checking the complete system.
| Parameter | Specification |
|---|---|
| Model | 20BD415A0ANNNND0 |
| Series | PowerFlex 700 |
| Voltage | 480 VAC |
| Phase | 3-phase |
| Current | 415 A |
| Normal-Duty Power | 350 HP |
| Heavy-Duty Power | 300 HP |
| Frame | Frame 8 |
| Enclosure | IP20 / Type 1 |
| Conformal Coating | Yes |
| Control | Vector |
| I/O | 120 V |
| Brake IGBT | No |
| Brake Resistor | No |
| Communication | No |
| Feedback | No |
| Filter | Without EMC filter / common-mode choke |
| Weight | Configuration-dependent |
| Dimensions | Frame 8 |
This configuration is especially relevant when the control system uses 120 V I/O rather than the 24 V I/O configuration of the reference model.
| Parameter | Specification |
|---|---|
| Model | 20BD415N0ANNNND0 |
| Series | PowerFlex 700 |
| Voltage | 480 VAC |
| Phase | 3-phase |
| Current | 415 A |
| Power | High-power 415 A class |
| Control | Vector |
| I/O | 120 V class |
| Brake IGBT | No |
| Internal Brake Resistor | No |
| Communication Module | No |
| Feedback | No |
| Filter | No EMC filter / common-mode choke |
| Frame | Frame 8 |
| Weight | Configuration-dependent |
| Dimensions | Configuration-dependent |
This model is useful when comparing option combinations within the same 415 A high-power family.
| Parameter | Specification |
|---|---|
| Model | 20BC481A0ANNNNC0 |
| Series | PowerFlex 700 |
| Voltage | 400 VAC class |
| Phase | 3-phase |
| Current | 481 A |
| Normal-Duty Power | 280 kW |
| Heavy-Duty Power | 240 kW |
| Control | Vector |
| Frame | Frame 8 |
| Enclosure | Large industrial configuration |
| Brake | Configuration-dependent |
| Communication | Configuration-dependent |
| Feedback | Configuration-dependent |
| Weight | Configuration-dependent |
| Dimensions | Frame 8 / exact drawing required |
This is a particularly useful related model when the 415 A capacity is insufficient and a higher current rating is required.
The published selection table places the 481 A 400 V configuration at approximately 280 kW Normal Duty and 240 kW Heavy Duty.
| Parameter | Specification |
|---|---|
| Model | 20BD481A0ANNNNC0 |
| Series | PowerFlex 700 |
| Voltage | 480 VAC |
| Phase | 3-phase |
| Current | 481 A |
| Normal-Duty Power | 400 HP |
| Heavy-Duty Power | 350 HP |
| Frame | Frame 8 |
| Control | Vector |
| I/O | Configuration-dependent |
| Brake | Configuration-dependent |
| Communication | Configuration-dependent |
| Feedback | Configuration-dependent |
| Weight | Configuration-dependent |
| Dimensions | Frame 8 |
This is the higher-current 480 V counterpart in the same general high-power range.
For a broader product comparison, the following models represent different power levels and drive families.
They are not direct electrical replacements for the 415 A PowerFlex 700.
| Model | Series | Voltage Class | Approx. Current / Power | Control | Typical Application | Approx. Weight | Dimensions |
|---|---|---|---|---|---|---|---|
| 25B-D2P3N114 | PowerFlex 525 | 480 VAC class | ~2.3 A | Sensorless vector | Compact machinery | ~2 kg class | Compact |
| 25B-D6P0N104 | PowerFlex 525 | 480 VAC class | ~6 A | Sensorless vector | Small and medium machines | ~3 kg class | Compact |
| 20F11NC2P2JA0NNNNN | PowerFlex 753 | 480 VAC class | ~2.2 A | Advanced vector | Industrial machinery | ~5–10 kg class | Compact / medium |
| 20G11NC072AA0NNNNN | PowerFlex 755 | 480 VAC class | ~72 A class | Advanced vector | Industrial process equipment | Configuration-dependent | Large industrial format |
| 20G11ND077AA0NNNNN | PowerFlex 755 | 480 VAC class | ~77 A class | Advanced vector | High-performance industrial machinery | Configuration-dependent | Large industrial format |
These models cover a much wider range than the 415 A PowerFlex 700.
The PowerFlex 525 models are intended for much smaller machines.
The PowerFlex 753 and PowerFlex 755 families are more appropriate when considering modernization of larger industrial systems.
| Feature | PowerFlex 525 | PowerFlex 700 | PowerFlex 753 | PowerFlex 755 |
|---|---|---|---|---|
| Main Position | Compact machine drive | High-power industrial drive | Advanced industrial drive | Advanced high-performance drive |
| Typical Motor Size | Small / medium | Large / very large | Medium / large | Medium / very large |
| Physical Size | Compact | Large | Medium / large | Medium / large |
| Vector Control | Yes | Yes | Yes | Yes |
| Large Motor Capability | Limited | Excellent | Excellent | Excellent |
| 415 A Class | No | Yes | Application-dependent | Application-dependent |
| PLC Integration | Good | Good | Excellent | Excellent |
| Process Applications | Good | Excellent | Excellent | Excellent |
| Compact Machines | Excellent | Oversized | Usually oversized | Usually oversized |
| Modernization Potential | Excellent for smaller systems | Existing-system replacement | Very good | Very good |
The main reason to select this model is its combination of high current capacity, high power rating and industrial vector-control capability.
The 415 A rating gives it sufficient capacity for large industrial motors.
The 240 kW Normal-Duty rating makes it suitable for large variable-speed machines.
The 200 kW Heavy-Duty rating makes it applicable to demanding applications where greater overload capability is required.
The PowerFlex 700 architecture also provides a practical solution for integrating large motors into industrial automation systems.
| Application Requirement | Benefit of the Drive |
|---|---|
| Large motor | 415 A current capability |
| High starting torque | Controlled acceleration |
| Variable production rate | Adjustable motor speed |
| Changing load | Vector motor control |
| Large rotating mass | Programmable acceleration/deceleration |
| PLC-based control | Industrial control integration |
| Continuous production | Industrial-duty architecture |
| Large conveyor | Smooth startup and speed control |
| Large pump | Variable-flow operation |
| Large fan | Adjustable airflow |
| Mixer | Controlled starting and speed adjustment |
| Process machinery | Flexible motor operation |
The model also has several limitations that should be considered.
The PowerFlex 700 20B family is discontinued. The lifecycle information identifies the discontinuation date as April 30, 2017.
This means that new machine designs should generally consider a current-generation alternative rather than building a new system around this discontinued model.
For an existing installation, however, the model can still be highly relevant as a replacement or spare-part requirement.
Applications requiring aggressive braking may need additional braking equipment.
Dynamic braking cannot simply be assumed to be available from the standard configuration.
Network integration may require additional hardware.
Encoder-based closed-loop applications require a suitable configuration or alternative architecture.
Frame 8 installation requires substantial cabinet space.
A high-power Frame 8 drive requires appropriate handling equipment during installation and replacement.
For an existing installation, the first step should be to record the complete nameplate information.
The following should be recorded:
This information should be compared with the proposed replacement.
A drive should not be selected solely because it has the same kW rating.
| Selection Priority | Model | Main Reason |
|---|---|---|
| 1 | 20BC415A0ANNNNC0 | Original 400 VAC / 415 A configuration |
| 2 | 20BD415A0ANNNNC0 | Closely related 480 VAC / 415 A configuration |
| 3 | 20BD415A0ANNNND0 | Same current class with different I/O configuration |
| 4 | 20BD415N0ANNNND0 | Related high-power 415 A configuration |
| 5 | 20BC481A0ANNNNC0 | Higher-current 400 VAC alternative |
| 6 | 20BD481A0ANNNNC0 | Higher-current 480 VAC alternative |
For a direct replacement, the first priority should be to preserve the original voltage class, motor current, duty requirement, I/O, braking, feedback, communication and physical arrangement.
| Evaluation Area | Assessment |
|---|---|
| Current Capacity | Excellent |
| Power Capacity | Excellent |
| Large Motor Applications | Excellent |
| Vector Control | Excellent |
| Adjustable Speed | Excellent |
| Conveyor Applications | Excellent |
| Pump Applications | Excellent |
| Fan Applications | Excellent |
| Compressor Applications | Very Good |
| Mixer Applications | Excellent |
| Crusher Applications | Very Good |
| Process Machinery | Excellent |
| PLC Integration | Good |
| Cabinet Integration | Excellent with proper engineering |
| Physical Compactness | Low |
| Installation Difficulty | High |
| Cooling Requirements | High |
| Braking Capability in Reference Configuration | Requires external solution when needed |
| Communication in Reference Configuration | Additional hardware may be required |
| Modernization Value | Good for existing systems |
| New-System Suitability | Limited because the family is discontinued |
The 20BC415A0ANNNNC0 is a high-power PowerFlex 700 adjustable-frequency AC drive designed for large three-phase industrial motors.
Its principal electrical characteristics are 400 VAC, three-phase input, 415 A current capacity, 240 kW Normal Duty, 200 kW Heavy Duty, vector control, 24 V I/O, IP20 / Type 1 enclosure and Frame 8 construction.
The drive is especially suitable for large conveyors, pumps, fans, blowers, compressors, mixers, crushers, material-handling systems and process machinery.
Its main advantages are its very high current capacity, high power rating, vector motor control, adjustable speed, controlled acceleration and deceleration, and ability to become part of a larger industrial automation system.
The Frame 8 construction is important when planning a replacement. This is a large industrial drive, so cabinet space, cooling, cable routing, grounding and service clearance must all be considered.
For dimensions and weight, the exact mechanical drawing should be treated as the controlling information. The catalog number identifies the electrical configuration, but the final installed dimensions and mass can depend on the mechanical arrangement and accessories.
The closest related models include 20BD415A0ANNNNC0, 20BD415A0ANNNND0, 20BD415N0ANNNND0, 20BC481A0ANNNNC0 and 20BD481A0ANNNNC0.
For broader product selection, smaller PowerFlex 525 models and newer PowerFlex 753 / 755 models provide alternatives at different power levels.
One particularly important point is the product lifecycle. The PowerFlex 700 20B family is discontinued, with the discontinuation announced for April 30, 2017. For an existing machine, the original model remains useful for identification and replacement planning; for a new system, a current-generation engineering replacement should normally be evaluated.
For any actual replacement, the correct engineering approach is to match the complete application rather than matching only horsepower or current. The incoming voltage, motor current, duty rating, overload requirements, braking, feedback, communication, I/O, enclosure, dimensions, cooling and installation conditions should all be checked before selecting the final replacement.